MAPK14
Gene Ontology Biological Process
- 3'-UTR-mediated mRNA stabilization [TAS]
- MyD88-dependent toll-like receptor signaling pathway [TAS]
- MyD88-independent toll-like receptor signaling pathway [TAS]
- RNA metabolic process [TAS]
- Ras protein signal transduction [TAS]
- TRIF-dependent toll-like receptor signaling pathway [TAS]
- activation of MAPK activity [TAS]
- blood coagulation [TAS]
- cell surface receptor signaling pathway [TAS]
- cellular component movement [TAS]
- cellular response to ionizing radiation [IMP]
- cellular response to lipopolysaccharide [IDA]
- cellular response to vascular endothelial growth factor stimulus [IMP]
- chemotaxis [TAS]
- gene expression [TAS]
- innate immune response [TAS]
- intracellular signal transduction [IDA]
- mRNA metabolic process [TAS]
- muscle cell differentiation [TAS]
- neurotrophin TRK receptor signaling pathway [TAS]
- osteoclast differentiation [ISS]
- p38MAPK cascade [ISS]
- peptidyl-serine phosphorylation [ISS]
- platelet activation [TAS]
- positive regulation of blood vessel endothelial cell migration [IMP]
- positive regulation of muscle cell differentiation [TAS]
- positive regulation of myoblast differentiation [ISS]
- positive regulation of myoblast fusion [ISS]
- positive regulation of myotube differentiation [ISS]
- positive regulation of reactive oxygen species metabolic process [IMP]
- regulation of sequence-specific DNA binding transcription factor activity [TAS]
- regulation of transcription from RNA polymerase II promoter [ISS]
- signal transduction [TAS]
- signal transduction in response to DNA damage [IMP]
- stress-activated MAPK cascade [TAS]
- stress-induced premature senescence [IMP]
- toll-like receptor 10 signaling pathway [TAS]
- toll-like receptor 2 signaling pathway [TAS]
- toll-like receptor 3 signaling pathway [TAS]
- toll-like receptor 4 signaling pathway [TAS]
- toll-like receptor 5 signaling pathway [TAS]
- toll-like receptor 9 signaling pathway [TAS]
- toll-like receptor TLR1:TLR2 signaling pathway [TAS]
- toll-like receptor TLR6:TLR2 signaling pathway [TAS]
- toll-like receptor signaling pathway [TAS]
- vascular endothelial growth factor receptor signaling pathway [IMP]
Gene Ontology Molecular Function
CDC25A
Gene Ontology Biological Process
- DNA replication [TAS]
- G1/S transition of mitotic cell cycle [TAS]
- G2/M transition of mitotic cell cycle [TAS]
- cell proliferation [TAS]
- cellular response to UV [IDA]
- mitotic cell cycle [TAS]
- regulation of cell cycle [TAS]
- regulation of cyclin-dependent protein serine/threonine kinase activity [TAS]
- response to radiation [IDA]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
- cytosol [TAS]
- nucleoplasm [TAS]
Reconstituted Complex
An interaction is inferred between proteins in vitro. This can include proteins in recombinant form or proteins isolated directly from cells with recombinant or purified bait. For example, GST pull-down assays where a GST-tagged protein is first isolated and then used to fish interactors from cell lysates are considered reconstituted complexes (e.g. PUBMED: 14657240, Fig. 4A or PUBMED: 14761940, Fig. 5). This can also include gel-shifts, surface plasmon resonance, isothermal titration calorimetry (ITC) and bio-layer interferometry (BLI) experiments. The bait-hit directionality may not be clear for 2 interacting proteins. In these cases the directionality is up to the discretion of the curator.
Publication
Regulation of human Cdc25A stability by Serine 75 phosphorylation is not sufficient to activate a S phase checkpoint.
Degradation of Cdc25A phosphatase is an ubiquitous feature of stress. There are some discrepancies in the reported roles for different phosphorylation sites in the regulation of Cdc25A stability. Using a panel of doxycycline-inducible phosphorylation mutants we show that the stability of human Cdc25A protein is dependent upon phosphorylation at S75. In non-stressed conditions and in non-mitotic cells, Cdc25A is unstable ... [more]
Throughput
- Low Throughput
Additional Notes
- p38 MAPK controls Cdc25A protein level after osmotic stress; phosphorylates S75 and S123 in vitro.
Curated By
- BioGRID